Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders
Over 150 different proteins attach to the plasma membrane using glycosylphosphatidylinositol (GPI) anchors. Mutations in 18 genes that encode components of GPI-anchor biogenesis result in a phenotypic spectrum that includes learning disability, epilepsy, microcephaly, congenital malformations and mi...
Những tác giả chính: | , , , , , , , , , , , , , , , , , |
---|---|
Định dạng: | Journal article |
Ngôn ngữ: | English |
Được phát hành: |
Springer Nature
2017
|
_version_ | 1826280578491613184 |
---|---|
author | Pagnamenta, A Murakami, Y Taylor, J Anzilotti, C Howard, M Miller, V Johnson, D Tadros, S Mansour, S Temple, I Firth, R Rosser, E Harrison, R Kerr, B Popitsch, N The DDD Study Kinoshita, T Taylor, J Kini, U |
author_facet | Pagnamenta, A Murakami, Y Taylor, J Anzilotti, C Howard, M Miller, V Johnson, D Tadros, S Mansour, S Temple, I Firth, R Rosser, E Harrison, R Kerr, B Popitsch, N The DDD Study Kinoshita, T Taylor, J Kini, U |
author_sort | Pagnamenta, A |
collection | OXFORD |
description | Over 150 different proteins attach to the plasma membrane using glycosylphosphatidylinositol (GPI) anchors. Mutations in 18 genes that encode components of GPI-anchor biogenesis result in a phenotypic spectrum that includes learning disability, epilepsy, microcephaly, congenital malformations and mild dysmorphic features. To determine the incidence of GPI-anchor defects, we analysed the exome data from 4293 parent-child trios recruited to the Deciphering Developmental Disorders (DDD) study. All probands recruited had a neurodevelopmental disorder. We searched for variants in 31 genes linked to GPI-anchor biogenesis and detected rare biallelic variants in PGAP3, PIGN, PIGT (n=2), PIGO and PIGL, providing a likely diagnosis for six families. In five families, the variants were in a compound heterozygous configuration while in a consanguineous Afghani kindred, a homozygous c.709G>C; p.(E237Q) variant in PIGT was identified within 10-12 Mb of autozygosity. Validation and segregation analysis was performed using Sanger sequencing. Across the six families, five siblings were available for testing and in all cases variants co-segregated consistent with them being causative. In four families, abnormal alkaline phosphatase results were observed in the direction expected. FACS analysis of knockout HEK293 cells that had been transfected with wild-type or mutant cDNA constructs demonstrated that the variants in PIGN, PIGT and PIGO all led to reduced activity. Splicing assays, performed using leucocyte RNA, showed that a c.336-2A>G variant in PIGL resulted in exon skipping and p.D113fs*2. Our results strengthen recently reported disease associations, suggest that defective GPI-anchor biogenesis may explain ~0.15% of individuals with developmental disorders and highlight the benefits of data sharing. |
first_indexed | 2024-03-07T00:15:47Z |
format | Journal article |
id | oxford-uuid:7acb3318-486d-4054-b5ee-4630e992c55d |
institution | University of Oxford |
language | English |
last_indexed | 2024-03-07T00:15:47Z |
publishDate | 2017 |
publisher | Springer Nature |
record_format | dspace |
spelling | oxford-uuid:7acb3318-486d-4054-b5ee-4630e992c55d2022-03-26T20:46:25ZAnalysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disordersJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7acb3318-486d-4054-b5ee-4630e992c55dEnglishSymplectic Elements at OxfordSpringer Nature2017Pagnamenta, AMurakami, YTaylor, JAnzilotti, CHoward, MMiller, VJohnson, DTadros, SMansour, STemple, IFirth, RRosser, EHarrison, RKerr, BPopitsch, NThe DDD StudyKinoshita, TTaylor, JKini, UOver 150 different proteins attach to the plasma membrane using glycosylphosphatidylinositol (GPI) anchors. Mutations in 18 genes that encode components of GPI-anchor biogenesis result in a phenotypic spectrum that includes learning disability, epilepsy, microcephaly, congenital malformations and mild dysmorphic features. To determine the incidence of GPI-anchor defects, we analysed the exome data from 4293 parent-child trios recruited to the Deciphering Developmental Disorders (DDD) study. All probands recruited had a neurodevelopmental disorder. We searched for variants in 31 genes linked to GPI-anchor biogenesis and detected rare biallelic variants in PGAP3, PIGN, PIGT (n=2), PIGO and PIGL, providing a likely diagnosis for six families. In five families, the variants were in a compound heterozygous configuration while in a consanguineous Afghani kindred, a homozygous c.709G>C; p.(E237Q) variant in PIGT was identified within 10-12 Mb of autozygosity. Validation and segregation analysis was performed using Sanger sequencing. Across the six families, five siblings were available for testing and in all cases variants co-segregated consistent with them being causative. In four families, abnormal alkaline phosphatase results were observed in the direction expected. FACS analysis of knockout HEK293 cells that had been transfected with wild-type or mutant cDNA constructs demonstrated that the variants in PIGN, PIGT and PIGO all led to reduced activity. Splicing assays, performed using leucocyte RNA, showed that a c.336-2A>G variant in PIGL resulted in exon skipping and p.D113fs*2. Our results strengthen recently reported disease associations, suggest that defective GPI-anchor biogenesis may explain ~0.15% of individuals with developmental disorders and highlight the benefits of data sharing. |
spellingShingle | Pagnamenta, A Murakami, Y Taylor, J Anzilotti, C Howard, M Miller, V Johnson, D Tadros, S Mansour, S Temple, I Firth, R Rosser, E Harrison, R Kerr, B Popitsch, N The DDD Study Kinoshita, T Taylor, J Kini, U Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders |
title | Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders |
title_full | Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders |
title_fullStr | Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders |
title_full_unstemmed | Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders |
title_short | Analysis of exome data for 4293 trios suggests GPI-anchor biogenesis defects are a rare cause of developmental disorders |
title_sort | analysis of exome data for 4293 trios suggests gpi anchor biogenesis defects are a rare cause of developmental disorders |
work_keys_str_mv | AT pagnamentaa analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT murakamiy analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT taylorj analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT anzilottic analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT howardm analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT millerv analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT johnsond analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT tadross analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT mansours analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT templei analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT firthr analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT rossere analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT harrisonr analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT kerrb analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT popitschn analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT thedddstudy analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT kinoshitat analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT taylorj analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders AT kiniu analysisofexomedatafor4293triossuggestsgpianchorbiogenesisdefectsareararecauseofdevelopmentaldisorders |